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VLSID
2003
IEEE
115views VLSI» more  VLSID 2003»
14 years 5 months ago
An Adaptive Supply-Voltage Scheme for Low Power Self-Timed CMOS Digital Design
This paper combines an adaptive supply-voltage scheme with self-timed CMOS digital design, to achieve low power performance. The supply-voltage automatically tracks the input data...
W. Kuang, J. S. Yuan
ESSCIRC
2011
93views more  ESSCIRC 2011»
12 years 4 months ago
12% Power reduction by within-functional-block fine-grained adaptive dual supply voltage control in logic circuits with 42 volta
— Within-functional-block fine-grained adaptive dual supply voltage control (FADVC) is proposed to reduce the power of CMOS logic circuits. Both process and design variations wi...
Atsushi Muramatsu, Tadashi Yasufuku, Masahiro Nomu...
IWSOC
2005
IEEE
141views Hardware» more  IWSOC 2005»
13 years 10 months ago
Design and Optimization of Low-Voltage Low-Power Quasi-Floating Gate Digital Circuits
This paper explores the design and optimization of Quasi-Floating Gate MOS techniques to lowvoltage/low-power digital circuitry. The simulated power consumption of standard CMOS g...
Kenneth A. Townsend, James W. Haslett, Krzysztof I...
VLSID
2005
IEEE
170views VLSI» more  VLSID 2005»
13 years 10 months ago
A High-Efficiency, Dual-Mode, Dynamic, Buck-Boost Power Supply IC for Portable Applications
Abstract—Integrated power supplies are critical building blocks in stateof-the-art portable applications, where they efficiently and accurately transform a battery supply into va...
Biranchinath Sahu, Gabriel A. Rincón-Mora
ISCAS
1995
IEEE
107views Hardware» more  ISCAS 1995»
13 years 8 months ago
Power Dissipation in Deep Submicron CMOS Digital Circuits
— This paper introduces a simple analytical model for estimating standby and switching power dissipation in deep submicron CMOS digital circuits. The model is based on Berkeley S...
R. X. Gu, Mohamed I. Elmasry